蓝藻螺旋藻延伸因子Tu和核糖体蛋白S10基因的染色体定位为原核生物str和S10操纵子的祖先组织提供了线索。

A M Sanangelantoni, O Tiboni
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引用次数: 13

摘要

编码蓝藻螺旋藻核糖体蛋白S10的结构基因(rps10)已经定位于染色体DNA和先前表征的重组质粒pSp7上,该质粒含有延伸因子G (fus)基因的3'端部分和延伸因子Tu (tuf)基因。与蓝藻、细菌、古细菌和真核生物的同源序列比对表明,蓝藻S10与蓝藻蛋白具有高度的序列同源性(74%的氨基酸同源性)。与大肠杆菌的情况不同,植物链球菌的rps10基因与S10操纵子基因无连锁,与str操纵子基因相邻。由于类似的组织可以在佯蓝藻(Cyanophora paradoxa)和迄今所分析的所有古细菌中观察到,这可能代表了祖先的状态。
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The chromosomal location of genes for elongation factor Tu and ribosomal protein S10 in the cyanobacterium Spirulina platensis provides clues to the ancestral organization of the str and S10 operons in prokaryotes.

The structural gene (rps10) encoding ribosomal protein S10 of the cyanobacterium Spirulina platensis has been localized both on chromosomal DNA and the previously characterized recombinant plasmid pSp7 harbouring the 3'-terminal portion of the gene for elongation factor G (fus) and the gene for elongation factor Tu (tuf). Alignment of the predicted S10 sequence of S. platensis with the homologous sequences from cyanelles, bacteria, archaea and eukarya showed that the cyanobacterial S10 shares a high degree of sequence homology (74% amino acid identity) with the cyanellar protein. Unlike the situation in Escherichia coli, the rps10 gene of S. plantensis is unlinked to the S10 operon genes, being adjacent to the str operon genes. Since a similar organization could be observed in cyanelles of Cyanophora paradoxa and in all archaea so far analysed, this probably represents the ancestral state.

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